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    <loc>https://frbtbu.owlstown.net/publications/55413-microparticle-aggregation-effect-of-intumescent-flame-retardants-on-flame-retardancy-and-toughening-property-of-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55415-in-suit-cemented-strategy-enables-intumescent-flame-retardant-transition-from-hyper-hydrophilic-to-hydrophobic-and-aggregation-flame-retardant-effect-simultaneously-in-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55414-macromolecular-piperazine-aluminum-phosphate-hybrid-and-its-efficient-intumescent-flame-retardant-thermal-conductive-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55417-a-zinc-embedded-multicomponent-copolymer-customized-for-polypropylene-and-its-synergistic-flame-retardant-effect-and-outstanding-mechanical-properties</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55422-bismuth-trioxide-replaced-diantimony-trioxide-to-obtain-polyvinyl-chloride-leather-with-high-flame-retardancy-and-low-flame-propagation-rate</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55424-effect-of-partial-replacement-of-antimony-trioxide-with-zinc-borate-and-stannic-oxide-on-the-flame-retardancy-of-flexible-pvc-films</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55426-from-physical-mixtures-to-block-copolymer-impose-outstandingly-toughening-and-flame-retardant-effect-to-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55429-toughening-behavior-and-synergistic-flame-retardant-effect-of-a-ternary-block-copolymer-with-amorphous-morphology-and-thermal-softening-property-in-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55437-the-synergistic-effect-of-inorganic-hybrid-nanofibers-and-phytic-acid-based-nanosheets-towards-improving-the-fire-retardancy-and-comprehensive-performance-of-epoxy-resin</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55436-hierarchical-hybrid-glass-fibers-modified-by-hyperbranched-polyphosphoramide-and-graphene-oxide-sheets-to-improve-flame-retardancy-and-suppress-candlewick-effect-of-poly-lactic-acid-glass-fibers-composites</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55435-construction-of-2d-1d-hybrids-through-hyperbranched-polyphosphoramide-toward-improving-mechanical-and-flame-retarding-properties-of-epoxy-composites</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55433-esterification-oligomerization-of-phosphaphenanthrene-biphenol-caused-efficient-flame-retardant-effect-of-group-aggregation-in-epoxy-resin</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55445-group-aggregation-effect-of-polyphenolic-phosphaphenanthrene-macromolecule-on-enhancing-fire-safety-and-toughness-of-epoxy-thermoset</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55438-alloying-synergistic-flame-retardant-effect-improving-fire-resistance-and-mechanical-properties-of-polyamide-6</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55439-synergistic-effect-between-piperazine-pyrophosphate-and-melamine-polyphosphate-in-flame-retardant-coatings-for-structural-steel</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55449-enhanced-flame-retardancy-in-ethylene-vinyl-acetate-copolymer-magnesium-hydroxide-polycarbosilane-blends</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55443-effect-of-amino-acid-triazine-copolymer-on-intumescent-flame-retardant-ethylene-vinyl-acetate</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55442-mechanically-robust-and-flame-retardant-polylactide-composites-based-on-in-situ-formation-of-crosslinked-network-structure-by-dcp-and-taic</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55440-the-fabrication-of-phytate-and-ldh-based-hybrid-nanosheet-towards-improved-fire-safety-properties-and-superior-smoke-suppression-of-intumescent-flame-retardant-ldpe</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55444-carbonization-dominated-synergistic-behaviors-of-ammonium-hypophosphite-eg-composite-in-improving-flame-retardancy-of-flexible-polyurethane-foam</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55441-a-novel-high-phosphorus-efficiency-phosphaphenanthrene-curing-agent-for-fabricating-flame-retardant-and-toughened-epoxy-thermoset</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55446-an-urethane-based-phosphonate-ester-for-improving-flame-retardancy-and-smoke-suppression-of-thermoplastic-polyurethane</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55450-synergistic-effect-of-polyimide-charring-agent-and-hexaphenoxycyclotriphosphazene-on-improving-fire-safety-of-polycarbonate-high-graphitization-to-strengthen-the-char-layer</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55447-mechanical-properties-and-flame-retardancy-of-pla-composites-containing-zinc-oxide-and-chain-extender</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55448-eco-friendly-phosphonic-acid-piperazine-salt-toward-high-efficiency-smoke-suppression-and-flame-retardancy-for-epoxy-resins</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55451-enhancement-of-the-intumescent-flame-retardant-efficiency-in-polypropylene-by-synergistic-charring-effect-of-a-hypophosphite-cyclotetrasiloxane-bi-group-compound</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55452-epoxy-thermoset-with-enhanced-flame-retardancy-and-physical-mechanical-properties-based-on-reactive-phosphaphenanthrene-compound</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55454-joint-aggregation-intumescent-flame-retardant-effect-of-ammonium-polyphosphate-and-charring-agent-in-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55455-strengthen-flame-retardancy-of-epoxy-thermoset-by-montmorillonite-particles-adhering-phosphorus-containing-fragments</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55453-flame-retardant-and-toughening-behaviors-of-bio-based-dopo-containing-curing-agent-in-epoxy-thermoset</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55469-enhancement-of-an-organic-metallic-hybrid-charring-agent-on-flame-retardancy-of-ethylene-vinyl-acetate-copolymer</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55467-synergistic-effects-of-nano-zinc-oxide-on-improving-the-flame-retardancy-of-eva-composites-with-an-efficient-triazine-based-charring-agent</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55471-flame-retardancy-of-epoxy-resin-nanocomposite-with-a-novel-polymeric-nanoflame-retardant</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55466-flame-inhibition-and-charring-effect-of-aromatic-polyimide-and-aluminum-diethylphosphinate-in-polyamide-6</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55456-quickly-self-extinguishing-flame-retardant-behavior-of-rigid-polyurethane-foams-linked-with-phosphaphenanthrene-groups</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55457-high-efficiency-flame-retardant-behavior-of-bi-dopo-compound-with-hydroxyl-group-on-epoxy-resin</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55460-flame-retardant-behavior-of-ternary-synergistic-systems-in-rigid-polyurethane-foams</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55464-intumescent-flame-retardant-behavior-of-charring-agents-with-different-aggregation-of-piperazine-triazine-groups-in-polypropylene</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55468-synergistic-charring-flame-retardant-behavior-of-polyimide-and-melamine-polyphosphate-in-glass-fiber-reinforced-polyamide-66</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55465-synthesis-of-1-4-methylenephenylphosphinic-acid-piperazine-and-its-application-as-a-flame-retardant-in-epoxy-thermosets</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55458-the-pyrolysis-behaviors-of-phosphorus-containing-organosilicon-compound-modified-app-with-different-polyether-segments-and-their-flame-retardant-mechanism-in-polyurethane-foam</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55459-improving-the-fracture-toughness-and-flame-retardant-properties-of-epoxy-thermosets-by-phosphaphenanthrene-siloxane-cluster-like-molecules-with-multiple-reactive-groups</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55470-synthesis-and-characterization-of-aluminum-2-carboxyethyl-phenyl-phosphinate-and-its-flame-retardant-application-in-polyester</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55522-flame-retardancy-and-thermal-behavior-of-intumescent-flame-retardant-eva-composites-with-an-efficient-triazine-based-charring-agent</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55518-synthesis-and-characterization-of-a-novel-organic-inorganic-hybrid-char-forming-agent-and-its-flame-retardant-application-in-polypropylene-composites</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55529-a-wrapped-nano-flame-retardant-composed-of-carbon-nanotubes-and-phosphorus-nitrogen-containing-polymer-synthesis-properties-and-flame-retardant-mechanism</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55524-addition-flame-retardant-effect-of-nonreactive-phosphonate-and-expandable-graphite-in-rigid-polyurethane-foams</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55527-flame-retardant-behavior-of-a-phosphorus-silicon-compound-on-polycarbonate</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55521-the-synergistic-flame-retardant-behaviors-of-pentaerythritol-phosphate-and-expandable-graphite-in-rigid-polyurethane-foams</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55520-high-performance-flame-retardant-epoxy-resin-based-on-a-bi-group-molecule-containing-phosphaphenanthrene-and-borate-groups</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55516-synergistic-flame-retardant-effect-and-mechanisms-of-boron-phosphorus-compounds-on-epoxy-resins</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55525-phosphorus-containing-silica-gel-coated-ammonium-polyphosphate-preparation-characterization-and-its-effect-on-the-flame-retardancy-of-rigid-polyurethane-foam</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55528-the-pyrolysis-behaviors-of-phosphorus-containing-organosilicon-compound-modified-ammonium-polyphosphate-with-different-phosphorus-containing-groups-and-their-different-flame-retardant-mechanisms-in-polyurethane-foam</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55515-toughening-effect-and-flame-retardant-behaviors-of-phosphaphenanthrene-phenylsiloxane-bigroup-macromolecules-in-epoxy-thermoset</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55628-intumescent-flame-retardant-poly-1-4-butylene-terephthalate-with-ammonium-polyphosphate-and-a-hyperbranched-triazine-charring-foaming-agent-flame-retardancy-performance-and-mechanisms</loc>
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  <url>
    <loc>https://frbtbu.owlstown.net/publications/55532-enhanced-flame-retardant-effect-of-a-montmorillonite-phosphaphenanthrene-compound-in-an-epoxy-thermoset</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55534-preparation-and-characterization-of-surface-modified-ammonium-polyphosphate-and-its-effect-on-the-flame-retardancy-of-rigid-polyurethane-foam</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55531-terminal-group-effects-of-phosphazene-triazine-bi-group-flame-retardant-additives-in-flame-retardant-polylactic-acid-composites</loc>
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    <loc>https://frbtbu.owlstown.net/publications/55535-synthesis-of-a-novel-flame-retardant-containing-phosphazene-and-triazine-groups-and-its-enhanced-charring-effect-in-poly-lactic-acid-resin</loc>
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